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Realizing ultrafast imaging from 2D to quasi 3D

Scientists at Beijing Institute of Technology have developed an ultra-fast quasi-three-dimensional technology, overcoming the shortcomings of missing information in two-dimensional images and incomplete features, allowing for the analysis of three-di.....»»

Category: topSource:  physorgAug 31st, 2023

Study: Quantum-dot-enabled infrared hyperspectral imaging with single-pixel detection

Near infrared (NIR) hyperspectral imaging is a highly promising detection technology capable of capturing detailed 3D spectral-spatial information, facilitating the identification and characterization of materials and targets based on their spectral.....»»

Category: topSource:  physorgRelated NewsSep 2nd, 2024

Neutron scattering instrument represents a new dawn for AI-powered atomic-scale 3D imaging

The Department of Energy's Oak Ridge National Laboratory added a new neutron scattering instrument to its powerhouse of discovery at the Spallation Neutron Source, charting new territory for neutron imaging through artificial intelligence. In July, D.....»»

Category: topSource:  physorgRelated NewsAug 29th, 2024

Proof-of-concept study demonstrates mid-infrared computational temporal ghost imaging

Ghost imaging in the time domain allows for reconstructing fast temporal objects using a slow photodetector. The technique involves correlating random or pre-programmed probing temporal intensity patterns with the integrated signal measured after mod.....»»

Category: topSource:  physorgRelated NewsAug 26th, 2024

Hybrid imaging approach reveals microbes in 3D

Caltech researchers have developed a new method to create three-dimensional images of complex communities of bacteria and plant roots. The technology synthesizes two traditional methods of imaging: visualizing microbes with fluorescence and a noninva.....»»

Category: topSource:  physorgRelated NewsAug 26th, 2024

Ultra-sensitive photothermal microscopy technique detects single nanoparticles as small as 5 nm

The detection of individual particles and molecules has opened new horizons in analytical chemistry, cellular imaging, nanomaterials, and biomedical diagnostics. Traditional single-molecule detection methods rely heavily on fluorescence techniques, w.....»»

Category: topSource:  physorgRelated NewsAug 23rd, 2024

Realizing the benefits of multi-cloud in a data-rich, AI-focused world

Realizing the benefits of multi-cloud in a data-rich, AI-focused world.....»»

Category: topSource:  marketingvoxRelated NewsAug 23rd, 2024

After months of mulling, NASA will decide on Starliner return this weekend

"The agency flight readiness review is where any formal dissents are presented and reconciled." Enlarge / A high-resolution commercial Earth-imaging satellite owned by Maxar captured this view of the International Space Station o.....»»

Category: topSource:  arstechnicaRelated NewsAug 23rd, 2024

Polarization volume gratings break uniformity-efficiency tradeoff in AR waveguide displays

Augmented reality (AR) has evolved from a futuristic concept to a widespread technology, thanks to advancements in microdisplay technologies, ultracompact imaging optics, and high-speed digital processors......»»

Category: topSource:  marketingvoxRelated NewsAug 19th, 2024

Novel light transport model improves X-ray phase contrast imaging

Researchers at the University of Houston unveiled an advancement in X-ray imaging technology that could provide significant improvements in medical diagnostics, materials and industrial imaging, transportation security and other applications......»»

Category: topSource:  theglobeandmailRelated NewsAug 14th, 2024

New insights into neural circuit imaging: A comparison of one-photon and two-photon techniques

In the quest to unravel the complexities of neural circuits, scientists are beginning to use genetically encoded voltage indicators (GEVIs) to visualize electrical activity in the brain. These indicators are crucial for understanding how neurons comm.....»»

Category: topSource:  physorgRelated NewsAug 14th, 2024

Coherence entropy unlocks new insights into light-field behavior

Light technology is at the heart of many cutting-edge innovations, from high-speed internet to advanced medical imaging. However, transmitting light through challenging environments, such as turbulent atmospheres or deformed optical systems, has alwa.....»»

Category: topSource:  physorgRelated NewsAug 14th, 2024

AI-driven method enhances electron microscopy imaging capabilities of complex biological systems

Electron microscopy has enabled visualization of the intricate details inside cells. The advancement to 3D electron microscopy, known as volume EM (vEM), has further expanded this three-dimensional, nanoscale imaging capacity. However, trade-offs bet.....»»

Category: topSource:  physorgRelated NewsAug 13th, 2024

PrivacyLens uses thermal imaging to turn people into stick figures

"Most consumers do not think about what happens to data collected by smart home devices." Enlarge / The round lens of PrivacyLens captures standard digital video while the square lens senses heat. The heat sensor improves the cam.....»»

Category: topSource:  arstechnicaRelated NewsAug 9th, 2024

Novel X-ray imaging technique resolves fusion-related nanofoams in 3D

The sun's fusion reactions drive its temperatures to thousands of degrees, and today scientists are seeking to recreate these star-powering processes in the lab as a means of an alternative clean energy......»»

Category: topSource:  physorgRelated NewsAug 8th, 2024

Towards high quality transferred barium titanate ferroelectric hybrid integrated modulator on silicon

Future optical communication and signal processing systems will require high-volume optical links, wherein photonic integrated devices play a key role. Si photonics is currently among the most advanced techniques for realizing low-cost PIC. However,.....»»

Category: topSource:  physorgRelated NewsAug 8th, 2024

Improving resolution and reducing noise in fluorescence microscopy with ensured fidelity

Fluorescence microscopy is a cornerstone of modern biological imaging, allowing scientists to study cells and their processes in real time. However, limitations in resolution and noise levels can hinder the clarity and detail of these images. Moreove.....»»

Category: topSource:  physorgRelated NewsAug 7th, 2024

Ultrafast electron microscopy technique advances understanding of processes applicable to brain-like computing

Today's supercomputers consume vast amounts of energy, equivalent to the power usage of thousands of homes. In response, researchers are developing a more energy-efficient form of next-generation supercomputing that leverages artificial neural networ.....»»

Category: topSource:  physorgRelated NewsAug 5th, 2024

Microscopy breakthrough promises better imaging for sensitive materials

An international team of scientists, led by Trinity College Dublin, has devised an innovative imaging method using state-of-the-art microscopes that significantly reduces the time and radiation required. Their work represents a significant breakthrou.....»»

Category: topSource:  pcmagRelated NewsAug 1st, 2024

Nanoscale imaging provides insights into 2D and phase-change materials

Researchers from the University of California, Berkeley have developed cutting-edge nanoscale optical imaging techniques to provide unprecedented insights into the ultrafast carrier dynamics in advanced materials......»»

Category: topSource:  physorgRelated NewsJul 31st, 2024

Imaging below the surface reveals one of Los Angeles"s webs of faults

A major fault is often surrounded by a web of secondary faults created as the forces that cause slip deform nearby rocks. This damage zone can act as a record of fault activity, but what we can learn from it—such as how the fault may behave during.....»»

Category: topSource:  physorgRelated NewsJul 30th, 2024